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降塵對(duì)阿月渾子雌花柱頭及授粉受精過(guò)程的影響

2025-08-15 00:00:00周欣雨王楓博阿馬努拉·依明尼亞孜王田巴特爾·巴克
果樹(shù)學(xué)報(bào) 2025年7期
關(guān)鍵詞:花粉管柱頭花粉

中圖分類(lèi)號(hào):S663.3 文獻(xiàn)標(biāo)志碼:A 文章編號(hào):1009-9980(2025)07-1532-09

Abstract:【Objective】 Southern Xinjiang is a major cultivation area for pistachios and also a region prone to dust storms.Natural dustfall after dust storms is mostly concentrated in spring and summer, overlapping with the flowering period of pistachios. The study aimed to explore the impact of dust deposition on the reproductive process of pistachios in order to provide a theoretical basis for improving fruit setting rate and fruit quality.【Methods】The Kerman variety of pistachio, the main cultivated fruit tree in Shufu County,Kashgar Region, Xinjiang, was used as experimental material. The female inflorescences located on the sunny side of the trees in the center of the orchard were bagged during their bud burst period. Based on the measured data of dustfallamounts during the flowering period in southern Xinjiang,the thickness of dustfallcovering was set.The artificial dustfall covering method was adopted, with the treatments of 0.3mg?cm-2 (mild), 0.8mg?cm-2 (moderate), and 1.3mg?cm-2 (severe) of dustfall covering thicknessand artificial bagging for dust prevention as the control (CK). The natural floating dust was collected as the dust source for the simulation experiment.A handheld dust applicator was used to evenly spread the required thickness of dustfall on each inflorescence.At 2O:00 every day, the bags were opened to spray dust on the female flowers,and the artificial dustfall treatment ended before the pollination of the female flowers.The samples were taken during the full-blooming stage.The scanning electron microscope was used to observe the differences in the ultrastructural morphology of the stigmas under the control and dustfall covering. The benzidine-hydrogen peroxide method was applied to study the strength of the stigmatic receptivity of the female flowers under the control and dustfall covering. The continuous sampling was carried out every O.5 hours after pollination during the fullbloom stage of the female flowers,and the fluorescence microscope was used to observe the differences in the process and duration of the growth of pistachio pollen tubes under the control and dustfall covering.【Results】 In the dust-free control,the papillacels of the stigmas of female flowers were clearly distinguishable,with relativelyregularcell shapes,closely and orderly arrnged,and very plump.The contact area between their surfaces and the air was relatively large.After mild and moderate dustfall treatments,the surfaces of the stigmas of the female flowers were covered by dustfall particles,and the moisture on the stigma surfaces was absorbed, causing obvious wrinkling and atrophy of the papilla cells.Aafter severe dustfall covering,the papilla cells on the stigma surfaces shrank severely,and the stigma surfaces were diffcult to clearly distinguish. The dustfalltreatments would weaken the stigmatic receptivity.The stigmas of female flowers in the control had the strongest receptivity, with adarker color around the stigmas and a large number of continuous large and small bubbles on the surfaces.The stigmas of female flowers under mild dustfall covering had relatively strong receptivity, with the color around the stigmas turning dark and closely connected smal bubbles attached on the surfaces. The stigmas of female flowers under moderate dustfallcovering had relatively weak receptivity, with an unobvious color change around the stigmas and a small number of bubbles generated.The stigmas of female flowers under severe dustfallcovering had the weakest receptivity, with no color change around the stigmas,very few bubbles on the surfaces,and some even stopped reacting without any bubbles.The dustfall covering also affected the elongation speed of the pollen tubes and prolonged the time for pistachio to complete fertilization.The elongation speed of the pollen tubes in the dustfall-treated plants was lower than that in the dust-free control plants,and the amount of pollen entering the embryo sac in the control plants was significantly more than that in the dustfal-treated plants.The plants of the control completed fertilization 3 hours after pollination. Compared with the control,the mild dustfall caused a 0.5- hour delay in the completion of fertilization of the female flowers;the moderate dustfall caused a 1- hour delay; and the severe dustfall caused a 2-hour delay. 【Conclusion】 During the flowering period, the dustfalltreatments could cause wrinkling and damage to the cells of te stigmas of the female flowers, reduce the stigmatic receptivity, and prolong the time to complete fertilization.

Key words:Pistacia vera L.; Dust deposition treatment; Stigma ultrastructure; Stigma receptivity; Pollination fertilization

良好的授粉受精是保證果樹(shù)果實(shí)產(chǎn)量和品質(zhì)的先決條件,而授粉受精與柱頭狀態(tài)、柱頭可授性、花粉管的生長(zhǎng)等密切相關(guān)。雌花柱頭會(huì)接收花粉,同時(shí)為花粉的附著和萌發(fā)提供必要的基底環(huán)境并發(fā)揮識(shí)別作用。柱頭之下是花柱結(jié)構(gòu),花柱為花粉管的生長(zhǎng)提供了通道,柱頭與花柱共同作用,才能保障花粉管能夠順利到達(dá)胚囊[3。柱頭可授性的強(qiáng)弱在很大程度上決定了植物能否成功完成授粉受精過(guò)程。除此之外,植物的授粉受精還受到外部環(huán)境因素的影響,如遇沙塵、低溫、大風(fēng)、陰雨等天氣,會(huì)對(duì)雌花柱頭產(chǎn)生影響,降低柱頭可授性,進(jìn)而影響植物的授粉受精過(guò)程。有研究顯示,降塵會(huì)對(duì)植物的組織與器官造成逆境脅迫,直接影響植物的形態(tài)結(jié)構(gòu),使其發(fā)生異常改變,情況嚴(yán)重時(shí),甚至還會(huì)引發(fā)畸形現(xiàn)象,影響植物正常的生長(zhǎng)發(fā)育。沙塵顆粒物若存在鹽分含量過(guò)高以及pH值過(guò)高的情況,會(huì)致使柱頭分泌物顯著減少,使柱頭可授性降低,進(jìn)而造成花粉難以黏附在柱頭表面,還會(huì)阻礙花粉向引導(dǎo)組織轉(zhuǎn)移,那么就會(huì)對(duì)植株的授粉受精產(chǎn)生影響,最終使得結(jié)果率下降,果實(shí)出現(xiàn)小果化的現(xiàn)象8]。

阿月渾子(PistaciaveraL.)又名開(kāi)心果,屬于漆樹(shù)科(Anacardiaceae)黃連木屬(Pistacia)落葉小喬木[9-10],是全球四大堅(jiān)果之一,具有很高的營(yíng)養(yǎng)價(jià)值和經(jīng)濟(jì)價(jià)值[1]。目前,新疆阿月渾子總種植面積約333.3hm2[12] ,主要集中在南疆喀什地區(qū)。南疆盆地及周?chē)貐^(qū)是中國(guó)主要的沙塵暴源區(qū)[3],且在春、夏季節(jié)風(fēng)沙災(zāi)害頻發(fā),具有突發(fā)性強(qiáng)、受災(zāi)范圍廣的特點(diǎn)[14]。張禮春等[15]研究表明,棗樹(shù)的柱頭可授性對(duì)浮塵極為敏感。陳虹等研究表明,南疆早實(shí)核桃的授粉受精受到自然降塵的負(fù)作用影響,會(huì)縮短雌花花期,對(duì)雌花柱頭的發(fā)育和花粉萌發(fā)產(chǎn)生影響,進(jìn)而降低授粉受精的成功率。阿月渾子屬于雌雄異株的果樹(shù),雌花于每年3月底至4月中旬生長(zhǎng)發(fā)育[8],正值浮塵來(lái)襲之際,其受降塵影響的程度或許要比其他果樹(shù)更為嚴(yán)重。目前只有自然降塵對(duì)棗樹(shù)[15]和核桃[開(kāi)花結(jié)果影響的研究,浮塵對(duì)南疆阿月渾子柱頭結(jié)構(gòu)和柱頭可授性以及授粉受精過(guò)程的影響還未見(jiàn)報(bào)道。因此,筆者在本研究中以浮塵天氣多發(fā)的喀什地區(qū)疏附縣特有果樹(shù)阿月渾子克爾曼(Kerman)品種為試驗(yàn)材料,采用人工降塵覆蓋法觀察柱頭超微形態(tài)結(jié)構(gòu)、柱頭可授性以及授粉受精過(guò)程。擬解決以下3個(gè)科學(xué)問(wèn)題:(1)降塵覆蓋對(duì)阿月渾子雌花柱頭的超微形態(tài)有何影響。(2)降塵覆蓋對(duì)阿月渾子雌花柱頭可授性是否有影響,如果有具體表現(xiàn)在哪些方面?(3)降塵覆蓋后對(duì)雌花授粉受精過(guò)程與時(shí)長(zhǎng)有何影響。以上問(wèn)題的分析試圖為進(jìn)一步揭示降塵對(duì)果樹(shù)授粉受精的影響機(jī)制提供理論依據(jù)。

1 材料和方法

1.1試驗(yàn)地概況與供試材料

試驗(yàn)地位于新疆喀什地區(qū)疏附縣阿月渾子種植資源圃園(地理坐標(biāo): ?N39°21,E75°51) ,平均海拔1300m ,地理位置位于新疆南疆,地處帕米爾高原東麓,塔里木盆地西緣。屬暖溫帶的荒漠生物氣候帶,晝夜溫差大,降水稀少,日照時(shí)間長(zhǎng),春夏季節(jié)常出現(xiàn)大風(fēng)、沙塵暴和浮塵天氣,年均氣溫 12.4°C ,年均降水量 65mm ,年均日照 2825h ,年均無(wú)霜期 233d. 試驗(yàn)材料為阿月渾子雌株品種克爾曼(Kerman),均選擇果園中心處向陽(yáng)面、樹(shù)勢(shì)良好、胸徑一致的果樹(shù)雌花花序,無(wú)塵對(duì)照和降塵處理各在2株果樹(shù)上選擇3組大花序(1組大花序中約有300朵花)。試驗(yàn)于2024年4月阿月渾子花期進(jìn)行。

1.2 方法

1.2.1降塵處理與采樣 在阿月渾子雌花萌動(dòng)期對(duì)花序進(jìn)行套袋處理(套袋材質(zhì)為硫酸紙),在雌花萌動(dòng)期根據(jù)南疆花期降塵量實(shí)測(cè)數(shù)據(jù) (7.7g?m-2?d-1) ,設(shè)置人工模擬的降塵覆蓋量 0.8mg?cm-2 為中度降塵,在中度降塵基礎(chǔ)上分別減少和增加 0.5mg?cm-2 為輕度降塵 (0.3mg?cm-2) 和重度降塵( 1.3mg?cm-2) 。采集自然浮塵為模擬試驗(yàn)的塵源,利用人工授粉器將各處理所需降塵厚底均勻覆蓋在各花序上,每日20:00打開(kāi)套袋對(duì)雌花進(jìn)行噴塵處理,人工降塵處理至雌花授粉前結(jié)束。在雌花盛花期人工授粉前采樣,每個(gè)處理在不同花序上采取3個(gè)重復(fù),觀測(cè)柱頭超微結(jié)構(gòu)的樣品放入戊二醛溶液中固定 12h 以上;測(cè)定柱頭可授性的樣品用錫箔紙和紗布迅速包裹好裝入液氮罐中,帶回實(shí)驗(yàn)室檢測(cè);在雌花的盛花期進(jìn)行人工授粉,授粉 0.5h 后開(kāi)始采樣,每次采樣間隔0.5h ,連續(xù)采樣12次。將待測(cè)樣品放入FAA固定液( 40% 甲醛:冰醋酸: 70% 乙醇)中固定,根據(jù)采集時(shí)間先后順序進(jìn)行編號(hào)并帶回實(shí)驗(yàn)室置于 4°C 冰箱保存?zhèn)溆谩?/p>

1.2.2雌花柱頭超微結(jié)構(gòu)觀察參照高超等方法,利用掃描電鏡觀察雌花柱頭超微結(jié)構(gòu),將試驗(yàn)樣品從戊二醛固定液中取出,經(jīng)乙醇溶液逐級(jí)脫水后冷凍干燥,將雌花的柱頭分別固定在樣品臺(tái)上,利用鍍膜儀(HITACHIMC1000型)鍍金 20min 后在掃描電鏡(HITACHIRegulus8100型)下觀察雌花柱頭的超微結(jié)構(gòu)。各處理選取5個(gè)柱頭,3次重復(fù)。

1.2.3柱頭可授性檢測(cè)參照曹紅星等的方法,采用聯(lián)苯胺-過(guò)氧化氫法測(cè)定柱頭可授性,配制成分為: 1% 聯(lián)苯胺: 3% 過(guò)氧化氫:水 (體積比),吸取聯(lián)苯胺-過(guò)氧化氫反應(yīng)液浸沒(méi)柱頭并染色20min ,隨后取出放置凹面載玻片上,在顯微鏡下進(jìn)行觀察柱頭狀態(tài),以柱頭的染色情況和產(chǎn)生氣泡的多少來(lái)確定雌花柱頭的可授性。各處理選取5個(gè)柱頭,3次重復(fù)。

1.2.4授粉受精過(guò)程和時(shí)長(zhǎng)的熒光顯微觀察參照田青蘭等[2的方法,采用苯胺藍(lán)染色法觀測(cè)花粉管伸長(zhǎng)狀態(tài),在FAA固定液中選取試驗(yàn)樣品,經(jīng)蒸餾水洗凈后將樣品放入 1mol?L-1 氫氧化鈉 ΔNaOH 中軟化 0.5h ,結(jié)束后用蒸餾水沖洗干凈并加入 0.1% (0.1mol?L-1K2HPO4) 苯胺藍(lán)溶液避光染色 2h ,染色后將花柱和子房縱向切開(kāi)放置在載玻片上,滴上甘油蓋片壓片,在正置熒光微分干涉數(shù)碼顯微鏡TRITC(紫外光激發(fā))下觀察拍照,每處理3次重復(fù)。

2 結(jié)果與分析

2.1雌花柱頭超顯微結(jié)構(gòu)觀察

掃描電鏡下顯示(圖1),無(wú)塵對(duì)照的雌花柱頭乳突細(xì)胞形狀清晰可辨,而且細(xì)胞排列緊密有序,其表面與空氣的接觸面積大,黏附在柱頭表面的花粉粒較多,無(wú)龜裂現(xiàn)象(圖1:A1~A3);經(jīng)輕度降塵處理的雌花柱頭乳突細(xì)胞有輕微皺縮(圖1-B1~B3);

中度降塵處理下的柱頭表面被降塵顆粒覆蓋并吸走水分,導(dǎo)致柱頭表面細(xì)胞皺縮明顯,部分區(qū)域皺縮嚴(yán)重,無(wú)法觀察到細(xì)胞輪廓(圖1-C1~C3);經(jīng)重度降塵的雌花,柱頭表面細(xì)胞發(fā)生龜裂,已經(jīng)完全無(wú)法分辨細(xì)胞輪廓,失水死亡的情況加重(圖1-D1~D3)。

2.2 降塵對(duì)柱頭可授性的影響

如圖2所示,無(wú)塵對(duì)照的阿月渾子雌花柱頭可授性最強(qiáng);經(jīng)降塵覆蓋后的雌花柱頭可授性隨著降塵量的增大而逐漸減弱。具體表現(xiàn)為:無(wú)塵對(duì)照處理的雌花柱頭周?chē)念伾^深且表面同時(shí)產(chǎn)生了大量連續(xù)不斷的大氣泡與小氣泡,即柱頭的可授性最強(qiáng);輕度降塵處理的雌花柱頭周?chē)伾優(yōu)樯钌砻娓郊司o密相連的小氣泡,即可授性較強(qiáng);中度降塵處理的雌花柱頭周?chē)兩幻黠@,同時(shí)產(chǎn)生少量

圖1無(wú)塵對(duì)照與降塵處理的阿月渾子雌花柱頭超顯微結(jié)構(gòu)形態(tài)差異
圖2無(wú)塵對(duì)照與降塵處理下阿月渾子雌花柱頭可授性測(cè)定效果( 10×)Fig.2Determinationeffect of column head receptivity under different treatments (10×)

氣泡,即可授性較弱;重度降塵處理的雌花柱頭周?chē)伾珶o(wú)變化,表面有極少量氣泡,部分停止反應(yīng)甚至沒(méi)有出現(xiàn)氣泡,即可授性弱。

2.3降塵對(duì)雌花授粉受精過(guò)程的影響

利用熒光顯微鏡對(duì)授粉后不同時(shí)間雌花受精狀態(tài)的觀察發(fā)現(xiàn),花粉開(kāi)始萌發(fā)時(shí),柱頭表面會(huì)呈現(xiàn)出藍(lán)綠色熒光顆粒(圖3)。授粉后 0.5h ,對(duì)照和降塵處理的雌花柱頭上多數(shù)花粉均已開(kāi)始萌發(fā),但對(duì)照雌花柱頭上的花粉萌發(fā)量(圖3-A1)顯著多于處理雌花(圖3-B1,C1,D1);授粉后1h,對(duì)照雌花的花粉管開(kāi)始向花柱延伸(圖3-A2),輕度降塵處理雌花的花粉管開(kāi)始在柱頭上伸長(zhǎng)(圖3-B2),中度降塵和重度降塵處理的雌花花粉管較少且仍處于柱頭上(圖3-C2、D2);授粉后 1.5h ,對(duì)照雌花的花粉管伸長(zhǎng)到引導(dǎo)組織且花粉管要比處理雌花的花粉管長(zhǎng)度長(zhǎng)(圖3-A3),而處理雌花的花粉管集中在花柱位置(圖3-B3,C3,D3);授粉后2h,對(duì)照雌花的花粉管已伸長(zhǎng)至子房腔處(圖3-A4),而處理雌花的花粉管才伸長(zhǎng)至引導(dǎo)組織(圖3-B4,C4,D4);授粉后 3h ,對(duì)照雌花胚囊里有大量花粉進(jìn)入成功完成受精(圖3-A5),輕度處理的雌花花粉管到達(dá)子房腔位置(圖3-B5),中度和重度處理的雌花花粉管伸長(zhǎng)的進(jìn)程基本一致(圖3-C5,D5);授粉后 3.5h ,輕度降塵處理雌花花粉管到達(dá)胚囊并完成受精(圖3-B6),中度降塵處理的雌花花粉管已達(dá)到子房腔處(圖3-C6),而重度處理的花粉管才開(kāi)始向子房腔位置延伸(圖3-D6);授粉后 4h ,中度降塵處理雌花才基本完成受精過(guò)程(圖3-C7),而重度降塵處理雌花花粉管還未達(dá)到胚囊。結(jié)果表明,降塵會(huì)延長(zhǎng)花粉管到達(dá)胚囊的時(shí)間,致使果樹(shù)完成受精過(guò)程延遲,與對(duì)照相比,輕度降塵導(dǎo)致雌花完成受精延遲 0.5h ;中度降塵導(dǎo)致雌花完成受精延遲1h;重度降塵則導(dǎo)致雌花完成受精延遲2h以上。

3討論

當(dāng)植物遭遇環(huán)境逆境脅迫時(shí),會(huì)使植物的組織器官受到傷害,可能影響植物自身的結(jié)構(gòu)[2。研究表明,沙塵覆蓋不僅通過(guò)物理阻隔破壞葉片角質(zhì)層結(jié)構(gòu)、堵塞葉片氣孔、抑制植物的光合作用,更通過(guò)干擾氣孔振蕩節(jié)律影響 CO2 同化效率[22-23]。當(dāng)降塵量達(dá)到一定程度時(shí),柱頭表面蠟質(zhì)晶體結(jié)構(gòu)發(fā)生熔融重組,這種形態(tài)學(xué)改變會(huì)顯著降低柱頭分泌物的持水能力[24]。呂威等[25對(duì)核桃雌花柱頭的超微結(jié)構(gòu)研究發(fā)現(xiàn),降塵顆粒阻塞氣孔導(dǎo)致水分運(yùn)輸受阻,引發(fā)細(xì)胞滲透壓失衡,因此降塵量越大,附著在核桃雌花柱頭表面的降塵顆粒越多,對(duì)核桃柱頭細(xì)胞傷害越大,脅迫持續(xù)時(shí)間越長(zhǎng),柱頭細(xì)胞失水、皺縮、破裂情況就越嚴(yán)重。在本研究中,觀察分析降塵覆蓋下的阿月渾子雌花柱頭超微結(jié)構(gòu),發(fā)現(xiàn)降塵覆蓋導(dǎo)致雌花柱頭上的乳突細(xì)胞皺縮,會(huì)使柱頭體積減小且柱頭表面難以清晰的分辨出來(lái),個(gè)別柱頭的表面細(xì)胞還可能會(huì)因失水而死亡,這些現(xiàn)象隨著降塵量的增加而越發(fā)嚴(yán)重,對(duì)阿月渾子的雌花柱頭造成不利影響,這與呂威等[25的研究結(jié)果一致。

柱頭可授性的強(qiáng)弱決定了植物能否完成正常的授粉受精[4。當(dāng)植物受到不良外界環(huán)境因素干擾時(shí)很可能致使植物開(kāi)花的時(shí)間延緩、開(kāi)花物候期減短、花器官發(fā)育存在缺陷、削弱花的柱頭可授性,甚至出

圖3阿月渾子雌花授粉后無(wú)塵對(duì)照和人工降塵處理花粉管伸長(zhǎng)差異( 40×)

現(xiàn)畸形的情況[2。植物在開(kāi)花期間遭遇低溫、大風(fēng)、陰雨、沙塵等極端天氣,雌蕊的枯萎率就會(huì)顯著升高,柱頭分泌物也會(huì)減少,進(jìn)而導(dǎo)致柱頭可授性降低[26-27]。張禮春等[15]對(duì)棗樹(shù)柱頭可授性的研究表明,在面對(duì)不同特征風(fēng)沙時(shí),棗樹(shù)柱頭對(duì)風(fēng)沙脅迫呈現(xiàn)出高度敏感性,在強(qiáng)風(fēng)沙脅迫下,棗樹(shù)的柱頭可授性會(huì)降低。由于降塵覆蓋使柱頭分泌物擴(kuò)散受阻,分泌物中糖蛋白無(wú)法形成連續(xù)梯度,最終導(dǎo)致花粉黏附效率下降[28]。有研究發(fā)現(xiàn),降塵會(huì)使核桃雌花柱頭分泌物減少,黏附花粉的能力被削弱,進(jìn)而影響了柱頭可授性[29]。本研究結(jié)果表明,雌花柱頭可授性隨著降塵量的增加而逐漸減弱。說(shuō)明當(dāng)降塵顆粒落到雌花柱頭上:一方面會(huì)覆蓋在柱頭表面吸走水分,加速了柱頭枯萎;另一方面會(huì)縮小柱頭與花粉接觸的面積,削弱了柱頭附著花粉的能力,導(dǎo)致柱頭可授性降低。而這一情況與在風(fēng)沙[]和降塵[環(huán)境下對(duì)果樹(shù)雌花柱頭可授性所產(chǎn)生的影響結(jié)果是類(lèi)似的。

植物的授粉受精過(guò)程,一方面受到自身繁育特性的影響,另一方面環(huán)境條件也是決定授粉受精能否順利進(jìn)行的關(guān)鍵要素[30]。有研究發(fā)現(xiàn),低溫冷害會(huì)抑制花粉管尖端 Ca2+ 濃度梯度形成,干擾細(xì)胞壁松弛酶的活性,從而阻礙花粉管極性生長(zhǎng)。Chen等[3通過(guò)對(duì)自然降塵條件下核桃花粉萌發(fā)情況進(jìn)行觀察,發(fā)現(xiàn)降塵會(huì)降低花粉萌發(fā)率以及減緩花粉管伸長(zhǎng)的速度,影響核桃正常的授粉受精。另有研究表明,在自然降塵逆境脅迫下,降塵顆粒會(huì)使柱頭的大部分面積被覆蓋,削弱了授粉時(shí)柱頭對(duì)花粉的黏附能力,減少了花粉的附著量,同時(shí)柱頭上花粉的萌發(fā)孔被降塵堵塞,降低了花粉的萌發(fā)速度,影響了花粉管的伸長(zhǎng),進(jìn)而導(dǎo)致花粉管到達(dá)胚囊的時(shí)間被延長(zhǎng)2]。在本研究中,降塵覆蓋會(huì)使阿月渾子花粉在雌花柱頭上的萌發(fā)以及花粉管伸長(zhǎng)這兩個(gè)過(guò)程出現(xiàn)延緩的情況。這一結(jié)果與降塵對(duì)核桃授粉受精過(guò)程影響3的研究結(jié)果一致。本研究結(jié)果充分證明,倘若阿月渾子在花期遭遇持續(xù)惡劣的浮塵天氣,柱頭表面會(huì)被大量降塵顆粒所覆蓋,可導(dǎo)致柱頭表面細(xì)胞皺縮,并且減少柱頭與花粉接觸的面積,使柱頭上的花粉附著量減少,進(jìn)而降低了柱頭可授性;降塵覆蓋也會(huì)延長(zhǎng)花粉管到達(dá)胚囊的時(shí)間,致使雌株完成受精的時(shí)間延長(zhǎng) 0.5h ,最長(zhǎng)延長(zhǎng) 2h ,干擾阿月渾子正常的授粉受精。由此可見(jiàn),降塵對(duì)雌花柱頭造成的不利影響,同樣會(huì)對(duì)阿月渾子的授粉受精產(chǎn)生負(fù)

面效應(yīng)。

4結(jié)論

阿月渾子花期若遭遇浮塵天氣,降塵會(huì)通過(guò)破壞柱頭超微結(jié)構(gòu)形態(tài)、降低柱頭可授性、延緩花粉管的伸長(zhǎng)、延長(zhǎng)花粉管到達(dá)胚囊的時(shí)間等方面對(duì)阿月渾子雌花器官產(chǎn)生不利影響,從而影響正常的授粉受精。

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[23]帕提古力·麥麥提,巴特爾·巴克,海利力·庫(kù)爾班.沙塵脅迫對(duì) 阿月渾子光合作用及葉綠素?zé)晒馓匦缘挠绊慬J].生態(tài)學(xué)報(bào), 2014,34(22):6450-6459. Patigul ? Mamat,Batur ?? Bake,Halil ?? Kurban. Influence of dust stress on the photosynthetic and chlorophyll fluorescence characteristicsof Pistacia vera L.[J].Acta Ecologica Sinica,2014,34 (22):6450-6459.

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[25]呂威,陳虹,孫守霞,楊麗,周光輝,張述斌.南疆花期降塵對(duì)核 桃雌花的影響[J/OL1.分子植物育種,2023:1-20.(2023-07-10). https://kns.cnki.net/kcms/detail/46.1068.S.20230707.1643.018. html. LU Wei,CHEN Hong,SUN Shouxia,YANGLi,ZHOU Guanghui,ZHANG Shubin.Effects of dustfall during flowering period insouthernXinjiang on female walnutflowers[J/OL].MolecularPlant Breeding,2023:1-20. (2023-07-10).https://kns.cnki. net/kcms/detail/46.1068.S.20230707.1643.018.html.

[26]方淼.南疆盆地大氣降塵粒度特征及其對(duì)核桃生殖的脅迫和 果實(shí)生長(zhǎng)的影響[D].烏魯木齊:新疆農(nóng)業(yè)大學(xué),2017. FANG Miao.Particle-size of atmospheric fall dust in the southernXinjiangbasin and itseffectsonthereproductionand fruit growth of common walnut[D].Urumqi:Xinjiang Agricultural University,2017.

[27]李浩東,秦夢(mèng)凡,張淼,王茸茸,徐宇,宋葭,朱云林,黃鎮(zhèn),徐愛(ài) 遐.花期低溫對(duì)甘藍(lán)型油菜葉片生理及雌雄蕊發(fā)育的影響[J]. 華北農(nóng)學(xué)報(bào),2022,37(5):78-86. LI Haodong,QIN Mengfan, ZHANG Miao,WANG Rongrong, XUYu,SONGJia,ZHUYunlin,HUANGZhen,XUAixia.Effects ofleaf physiology and pistil/stamen development of BrassicanapusL.to low temperature during the floweringstage[J]. ActaAgriculturaeBoreali-Sinica,2022,37(5):78-86.

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