干旱胁迫下纳米硅对马铃薯外植体生理参数的影响

Ihab El-tahan; Enas Safaa Azab; Mohamed Elhamahmy
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摘要

研究了4个马铃薯品种(Hermes、Charlotte、Inova和Maris Peer)在聚乙二醇(PEG 10%)诱导的干旱胁迫下,分别处理200和400 ppm的Si-NPs对其生长和微管化的影响。总的来说,与peg胁迫相比,两种浓度的Si-NPs均增强了马铃薯外植体的大部分营养参数。在200 ppm Si-NPs处理下,颖花外植体最大茎长(16.9 cm)、叶数(18)和节数(20)/外植体。通过SDS-PAGE分离得到了微块茎中最多的蛋白条带(11条),TEM检测到韧皮部组织中筛元的最大宽度(6µm)。此外,低浓度Si-NPs处理Hermes cv。外植体粗生率最高(0.76g),小块茎形成时间最短(71d),小块茎/外植体粗生率最高(2.3g),小块茎/外植体粗生率最高(2.3g),芽部分离蛋白条带数最高(11个)。高浓度(400ppm) Si-NPs可使韧皮部最大厚度达到5层(275µm),淀粉粒大且丰富,韧皮部筛元最大长度为10µm,伴生细胞最大长度为9µm。因此,在干旱胁迫下,经硅纳米粒子处理的微块茎具有抗旱性,必须在田间条件下进行评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physiological Parameters of Potato Explants as Affected by Silicon Nanoparticles under Drought Stress
: Potential of growth and microtubrization of four potato cultivars (Hermes, Charlotte, Inova and Maris Peer) treated with two concentrations of Si-NPs (200 and 400 ppm) exposed to drought stress, induced by polyethylene glycol (PEG 10%) were studied. In general, Si-NPs at both concentrations enhanced most vegetative parameters of potato explants compared to PEG-stressed ones. Maximum stem length (16.9 cm), both number of leaves (18)and nods (20)/explant were recorded in 200 ppm of Si-NPs treated explants of Inova cv. with synthesizing of the highest number of protein bands in microtuber (11) separated by SDS-PAGE and maximum width of sieve elements (6µm) of phloem tissue examined by TEM. Also, low concentration of Si-NPs treated Hermes cv. explants gave the highest values of FW of explant (0.76g), minimum period for microtuber initiation (71d), maximum number (2.3) and FW (2.3g) of microtuber/explant which attributed with the highest number of separated protein bands in shoots (11). Si-NPs at high concentration (400ppm) gave the maximum thickness of 5 layers of phelloderm (275 µm) under phellem with large and abundant starch grains and maximum length of both sieve element (10µm) and companion cells (9 µm) of phloem. It can recommend that, production of Si-NPs treated microtubers, under drought stress could be tolerant to drought and it must be evaluated under field conditions.
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